xref: /sqlite-3.40.0/src/hash.c (revision 5d00d0a8)
1 /*
2 ** 2001 September 22
3 **
4 ** The author disclaims copyright to this source code.  In place of
5 ** a legal notice, here is a blessing:
6 **
7 **    May you do good and not evil.
8 **    May you find forgiveness for yourself and forgive others.
9 **    May you share freely, never taking more than you give.
10 **
11 *************************************************************************
12 ** This is the implementation of generic hash-tables
13 ** used in SQLite.
14 **
15 ** $Id: hash.c,v 1.38 2009/05/09 23:29:12 drh Exp $
16 */
17 #include "sqliteInt.h"
18 #include <assert.h>
19 
20 /* Turn bulk memory into a hash table object by initializing the
21 ** fields of the Hash structure.
22 **
23 ** "pNew" is a pointer to the hash table that is to be initialized.
24 */
25 void sqlite3HashInit(Hash *pNew){
26   assert( pNew!=0 );
27   pNew->first = 0;
28   pNew->count = 0;
29   pNew->htsize = 0;
30   pNew->ht = 0;
31 }
32 
33 /* Remove all entries from a hash table.  Reclaim all memory.
34 ** Call this routine to delete a hash table or to reset a hash table
35 ** to the empty state.
36 */
37 void sqlite3HashClear(Hash *pH){
38   HashElem *elem;         /* For looping over all elements of the table */
39 
40   assert( pH!=0 );
41   elem = pH->first;
42   pH->first = 0;
43   sqlite3_free(pH->ht);
44   pH->ht = 0;
45   pH->htsize = 0;
46   while( elem ){
47     HashElem *next_elem = elem->next;
48     sqlite3_free(elem);
49     elem = next_elem;
50   }
51   pH->count = 0;
52 }
53 
54 /*
55 ** The hashing function.
56 */
57 static unsigned int strHash(const char *z, int nKey){
58   int h = 0;
59   assert( nKey>=0 );
60   while( nKey > 0  ){
61     h = (h<<3) ^ h ^ sqlite3UpperToLower[(unsigned char)*z++];
62     nKey--;
63   }
64   return h;
65 }
66 
67 
68 /* Link pNew element into the hash table pH.  If pEntry!=0 then also
69 ** insert pNew into the pEntry hash bucket.
70 */
71 static void insertElement(
72   Hash *pH,              /* The complete hash table */
73   struct _ht *pEntry,    /* The entry into which pNew is inserted */
74   HashElem *pNew         /* The element to be inserted */
75 ){
76   HashElem *pHead;       /* First element already in pEntry */
77   if( pEntry ){
78     pHead = pEntry->count ? pEntry->chain : 0;
79     pEntry->count++;
80     pEntry->chain = pNew;
81   }else{
82     pHead = 0;
83   }
84   if( pHead ){
85     pNew->next = pHead;
86     pNew->prev = pHead->prev;
87     if( pHead->prev ){ pHead->prev->next = pNew; }
88     else             { pH->first = pNew; }
89     pHead->prev = pNew;
90   }else{
91     pNew->next = pH->first;
92     if( pH->first ){ pH->first->prev = pNew; }
93     pNew->prev = 0;
94     pH->first = pNew;
95   }
96 }
97 
98 
99 /* Resize the hash table so that it cantains "new_size" buckets.
100 **
101 ** The hash table might fail to resize if sqlite3_malloc() fails or
102 ** if the new size is the same as the prior size.
103 ** Return TRUE if the resize occurs and false if not.
104 */
105 static int rehash(Hash *pH, unsigned int new_size){
106   struct _ht *new_ht;            /* The new hash table */
107   HashElem *elem, *next_elem;    /* For looping over existing elements */
108 
109 #if SQLITE_MALLOC_SOFT_LIMIT>0
110   if( new_size*sizeof(struct _ht)>SQLITE_MALLOC_SOFT_LIMIT ){
111     new_size = SQLITE_MALLOC_SOFT_LIMIT/sizeof(struct _ht);
112   }
113   if( new_size==pH->htsize ) return 0;
114 #endif
115 
116   /* The inability to allocates space for a larger hash table is
117   ** a performance hit but it is not a fatal error.  So mark the
118   ** allocation as a benign.
119   */
120   sqlite3BeginBenignMalloc();
121   new_ht = (struct _ht *)sqlite3Malloc( new_size*sizeof(struct _ht) );
122   sqlite3EndBenignMalloc();
123 
124   if( new_ht==0 ) return 0;
125   sqlite3_free(pH->ht);
126   pH->ht = new_ht;
127   pH->htsize = new_size = sqlite3MallocSize(new_ht)/sizeof(struct _ht);
128   memset(new_ht, 0, new_size*sizeof(struct _ht));
129   for(elem=pH->first, pH->first=0; elem; elem = next_elem){
130     unsigned int h = strHash(elem->pKey, elem->nKey) % new_size;
131     next_elem = elem->next;
132     insertElement(pH, &new_ht[h], elem);
133   }
134   return 1;
135 }
136 
137 /* This function (for internal use only) locates an element in an
138 ** hash table that matches the given key.  The hash for this key has
139 ** already been computed and is passed as the 4th parameter.
140 */
141 static HashElem *findElementGivenHash(
142   const Hash *pH,     /* The pH to be searched */
143   const char *pKey,   /* The key we are searching for */
144   int nKey,           /* Bytes in key (not counting zero terminator) */
145   unsigned int h      /* The hash for this key. */
146 ){
147   HashElem *elem;                /* Used to loop thru the element list */
148   int count;                     /* Number of elements left to test */
149 
150   if( pH->ht ){
151     struct _ht *pEntry = &pH->ht[h];
152     elem = pEntry->chain;
153     count = pEntry->count;
154   }else{
155     elem = pH->first;
156     count = pH->count;
157   }
158   while( count-- && ALWAYS(elem) ){
159     if( elem->nKey==nKey && sqlite3StrNICmp(elem->pKey,pKey,nKey)==0 ){
160       return elem;
161     }
162     elem = elem->next;
163   }
164   return 0;
165 }
166 
167 /* Remove a single entry from the hash table given a pointer to that
168 ** element and a hash on the element's key.
169 */
170 static void removeElementGivenHash(
171   Hash *pH,         /* The pH containing "elem" */
172   HashElem* elem,   /* The element to be removed from the pH */
173   unsigned int h    /* Hash value for the element */
174 ){
175   struct _ht *pEntry;
176   if( elem->prev ){
177     elem->prev->next = elem->next;
178   }else{
179     pH->first = elem->next;
180   }
181   if( elem->next ){
182     elem->next->prev = elem->prev;
183   }
184   if( pH->ht ){
185     pEntry = &pH->ht[h];
186     if( pEntry->chain==elem ){
187       pEntry->chain = elem->next;
188     }
189     pEntry->count--;
190     assert( pEntry->count>=0 );
191   }
192   sqlite3_free( elem );
193   pH->count--;
194   if( pH->count<=0 ){
195     assert( pH->first==0 );
196     assert( pH->count==0 );
197     sqlite3HashClear(pH);
198   }
199 }
200 
201 /* Attempt to locate an element of the hash table pH with a key
202 ** that matches pKey,nKey.  Return the data for this element if it is
203 ** found, or NULL if there is no match.
204 */
205 void *sqlite3HashFind(const Hash *pH, const char *pKey, int nKey){
206   HashElem *elem;    /* The element that matches key */
207   unsigned int h;    /* A hash on key */
208 
209   assert( pH!=0 );
210   assert( pKey!=0 );
211   assert( nKey>=0 );
212   if( pH->ht ){
213     h = strHash(pKey, nKey) % pH->htsize;
214   }else{
215     h = 0;
216   }
217   elem = findElementGivenHash(pH, pKey, nKey, h);
218   return elem ? elem->data : 0;
219 }
220 
221 /* Insert an element into the hash table pH.  The key is pKey,nKey
222 ** and the data is "data".
223 **
224 ** If no element exists with a matching key, then a new
225 ** element is created and NULL is returned.
226 **
227 ** If another element already exists with the same key, then the
228 ** new data replaces the old data and the old data is returned.
229 ** The key is not copied in this instance.  If a malloc fails, then
230 ** the new data is returned and the hash table is unchanged.
231 **
232 ** If the "data" parameter to this function is NULL, then the
233 ** element corresponding to "key" is removed from the hash table.
234 */
235 void *sqlite3HashInsert(Hash *pH, const char *pKey, int nKey, void *data){
236   unsigned int h;       /* the hash of the key modulo hash table size */
237   HashElem *elem;       /* Used to loop thru the element list */
238   HashElem *new_elem;   /* New element added to the pH */
239 
240   assert( pH!=0 );
241   assert( pKey!=0 );
242   assert( nKey>=0 );
243   if( pH->htsize ){
244     h = strHash(pKey, nKey) % pH->htsize;
245   }else{
246     h = 0;
247   }
248   elem = findElementGivenHash(pH,pKey,nKey,h);
249   if( elem ){
250     void *old_data = elem->data;
251     if( data==0 ){
252       removeElementGivenHash(pH,elem,h);
253     }else{
254       elem->data = data;
255       elem->pKey = pKey;
256       assert(nKey==elem->nKey);
257     }
258     return old_data;
259   }
260   if( data==0 ) return 0;
261   new_elem = (HashElem*)sqlite3Malloc( sizeof(HashElem) );
262   if( new_elem==0 ) return data;
263   new_elem->pKey = pKey;
264   new_elem->nKey = nKey;
265   new_elem->data = data;
266   pH->count++;
267   if( pH->count>=10 && pH->count > 2*pH->htsize ){
268     if( rehash(pH, pH->count*2) ){
269       assert( pH->htsize>0 );
270       h = strHash(pKey, nKey) % pH->htsize;
271     }
272   }
273   if( pH->ht ){
274     insertElement(pH, &pH->ht[h], new_elem);
275   }else{
276     insertElement(pH, 0, new_elem);
277   }
278   return 0;
279 }
280